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用于实验室饲养蚊子幼虫的自动粒子计数器的试验。

Trials of the Automated Particle Counter for laboratory rearing of mosquito larvae.

机构信息

Entomology Branch, Division of Parasitic Diseases and Malaria, Centers for Disease Control and Prevention (CDC), Atlanta, GA, United States of America.

出版信息

PLoS One. 2020 Nov 10;15(11):e0241492. doi: 10.1371/journal.pone.0241492. eCollection 2020.

Abstract

As a means of obtaining reproducible and accurate numbers of larvae for laboratory rearing, we tested a large-particle flow-cytometer type device called the 'Automated Particle Counter' (APC). The APC is a gravity-fed, self-contained unit that detects changes in light intensity caused by larvae passing the detector in a water stream and controls dispensing by stopping the flow when the desired number has been reached. We determined the accuracy (number dispensed compared to the target value) and precision (distribution of number dispensed) of dispensing at a variety of counting sensitivity thresholds and larva throughput rates (larvae per second) using < 1-day old Anopheles gambiae and Aedes aegypti larvae. All measures were made using an APC algorithm called the 'Smoothed Z-Score' which allows the user to define how many standard deviations (Z scores) from the baseline light intensity a particle's absorbance must exceed to register a count. We dispensed a target number of 100 An. gambiae larvae using Z scores from 2.5-8 and observed no difference among them in the numbers dispensed for scores from 2.5-6, however, scores of 7 and 8 under-counted (over-dispensed) larvae. Using a Z score ≤ 6, we determined the effect of throughput rate on the accuracy of the device to dispense An. gambiae larvae. For rates ≤ 98 larvae per second, the accuracy of dispensing a target of 100 larvae was - 2.29% ± 0.72 (95% CI of the mean) with a mode of 99 (49 of 348 samples). When using a Z score of 3.5 and rates ≤ 100 larvae per second, the accuracy of dispensing a target of 100 Ae. aegypti was - 2.43% ± 1.26 (95% CI of the mean) with a mode of 100 (6 of 42 samples). No effect on survival was observed on the number of An. gambiae first stage larvae that reached adulthood as a function of dispensing.

摘要

作为获得可重复和准确数量幼虫用于实验室饲养的一种手段,我们测试了一种称为“自动颗粒计数器”(APC)的大型粒子流式细胞仪设备。APC 是一种重力供给、独立式装置,通过检测幼虫在水流中通过探测器时引起的光强度变化来控制分配,当达到所需数量时停止流动。我们使用不到 1 天龄的冈比亚按蚊和埃及伊蚊幼虫,在各种计数灵敏度阈值和幼虫吞吐量率(每秒幼虫数)下,确定了分配的准确性(分配数量与目标值的比较)和精密度(分配数量的分布)。所有测量均使用称为“平滑 Z 分数”的 APC 算法进行,该算法允许用户定义粒子的吸光度必须超过基线光强度多少个标准偏差(Z 分数)才能记录一个计数。我们使用 Z 分数为 2.5-8 分配了 100 个 An. gambiae 幼虫的目标数量,并且在 Z 分数为 2.5-6 时,观察到分配数量之间没有差异,然而,Z 分数为 7 和 8 的分配数量过少(分配过多)幼虫。使用 Z 分数≤6,我们确定了吞吐量率对分配 An. gambiae 幼虫的设备准确性的影响。对于速率≤98 个幼虫/秒,分配 100 个幼虫目标的准确性为-2.29%±0.72(平均值的 95%置信区间),模式为 99(348 个样本中的 49 个)。当使用 Z 分数为 3.5 且速率≤100 个幼虫/秒时,分配 100 个 Ae. aegypti 目标的准确性为-2.43%±1.26(平均值的 95%置信区间),模式为 100(42 个样本中的 6 个)。分配对达到成虫阶段的 An. gambiae 第一龄幼虫的数量没有观察到对存活率的影响。

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